deficiency causes oocyte ferroptosis.

Proc Natl Acad Sci U S A

Institute of Pediatrics, Children's Hospital of Fudan University, The Institutes of Biomedical Sciences, State Key Laboratory of Genetic Engineering, Fudan University, Shanghai 200032, China.

Published: November 2024

AI Article Synopsis

  • Mitochondria have different structures and functions in oocytes compared to somatic cells, and their specific roles in oocyte health are not well understood.
  • A study analyzed genetic data from women with oocyte issues and identified a candidate gene linked to female infertility due to ferroptosis, a type of cell death.
  • The research highlights how disruptions in mitochondrial function can lead to infertility and suggests potential treatments using ferroptosis inhibitors to improve oocyte health.

Article Abstract

Mitochondria play diverse roles in mammalian physiology. The architecture, activity, and physiological functions of mitochondria in oocytes are largely different from those in somatic cells, but the mitochondrial proteins related to oocyte quality and reproductive longevity remain largely unknown. Here, using whole-exome sequencing data from 1,024 women (characterized by oocyte maturation arrest and degenerated or morphologically abnormal oocytes) and 2,868 healthy controls, we performed a population and gene-based burden test for mitochondrial genes and identified a candidate gene, cytochrome c oxidase assembly protein 15 ( We report that biallelic pathogenic variants cause human oocyte ferroptosis and female infertility in a recessive inheritance pattern. variants impaired mitochondrial respiration in and led to reduced protein levels in HeLa cells. Oocyte-specific deletion of led to impaired Fe and reactive oxygen species homeostasis that caused mitochondrial dysfunction and ultimately sensitized oocytes to ferroptosis. In addition, ferrostatin-1 (an inhibitor of ferroptosis) could rescue the oocyte ferroptosis phenotype in vitro and ex vivo. Our findings not only provide a genetic diagnostic marker for oocyte development defects but also expand the spectrum of mitochondrial disorders to female infertility and contribute to unique insights into the role of ferroptosis in human oocyte defects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11551447PMC
http://dx.doi.org/10.1073/pnas.2406174121DOI Listing

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